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CN203474810U - Polymerase chain reaction device - Google Patents

Polymerase chain reaction device Download PDF

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CN203474810U
CN203474810U CN201320291554.2U CN201320291554U CN203474810U CN 203474810 U CN203474810 U CN 203474810U CN 201320291554 U CN201320291554 U CN 201320291554U CN 203474810 U CN203474810 U CN 203474810U
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temperature control
polymerase chain
control unit
conditioning unit
chain reaction
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蔡秀娟
尼可烈·思吉富
宋致祥
刘振凰
陈庭轩
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L7/00Heating or cooling apparatus; Heat insulating devices
    • B01L7/52Heating or cooling apparatus; Heat insulating devices with provision for submitting samples to a predetermined sequence of different temperatures, e.g. for treating nucleic acid samples
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L7/00Heating or cooling apparatus; Heat insulating devices
    • B01L7/52Heating or cooling apparatus; Heat insulating devices with provision for submitting samples to a predetermined sequence of different temperatures, e.g. for treating nucleic acid samples
    • B01L7/525Heating or cooling apparatus; Heat insulating devices with provision for submitting samples to a predetermined sequence of different temperatures, e.g. for treating nucleic acid samples with physical movement of samples between temperature zones
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L7/00Heating or cooling apparatus; Heat insulating devices
    • B01L7/54Heating or cooling apparatus; Heat insulating devices using spatial temperature gradients
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2300/00Additional constructional details
    • B01L2300/18Means for temperature control
    • B01L2300/1883Means for temperature control using thermal insulation
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L2400/00Moving or stopping fluids
    • B01L2400/04Moving fluids with specific forces or mechanical means
    • B01L2400/0403Moving fluids with specific forces or mechanical means specific forces
    • B01L2400/0442Moving fluids with specific forces or mechanical means specific forces thermal energy, e.g. vaporisation, bubble jet
    • B01L2400/0445Natural or forced convection
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L3/00Containers or dishes for laboratory use, e.g. laboratory glassware; Droppers
    • B01L3/50Containers for the purpose of retaining a material to be analysed, e.g. test tubes
    • B01L3/508Containers for the purpose of retaining a material to be analysed, e.g. test tubes rigid containers not provided for above
    • B01L3/5082Test tubes per se

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Abstract

本实用新型公开一种聚合酶连锁反应装置,用以执行逆转录反应(RT)与热对流聚合酶连锁反应(cPCR),并包括一上温控单元、一中间温控单元与一下温控单元。中间温控单元用以对容置在一反应容器中的一反应混合物进行温控,使得反应混合物具有进行一逆转录反应所需的一温度。中间温控单元配置在上温控单元与下温控单元之间。上温控单元与下温控单元是用以同时对容置在反应容器中的反应混合物进行温控,以使反应混合物具有进行一热对流聚合酶连锁反应所需的一温度梯度与对流情况。

Figure 201320291554

The utility model discloses a polymerase chain reaction device, which is used to perform reverse transcription reaction (RT) and thermal convection polymerase chain reaction (cPCR), and comprises an upper temperature control unit, an intermediate temperature control unit and a lower temperature control unit. The intermediate temperature control unit is used to perform temperature control on a reaction mixture contained in a reaction container, so that the reaction mixture has a temperature required for performing a reverse transcription reaction. The intermediate temperature control unit is arranged between the upper temperature control unit and the lower temperature control unit. The upper temperature control unit and the lower temperature control unit are used to perform temperature control on the reaction mixture contained in the reaction container at the same time, so that the reaction mixture has a temperature gradient and convection conditions required for performing a thermal convection polymerase chain reaction.

Figure 201320291554

Description

聚合酶连锁反应装置Polymerase Chain Reaction Apparatus

技术领域technical field

本实用新型涉及一种聚合酶连锁反应(PCR)装置。The utility model relates to a polymerase chain reaction (PCR) device.

背景技术Background technique

聚合酶连锁反应(POLYMERASE CHAIN REACTION;PCR)是一种分子生物学技术,用于扩增特定的DNA片段。聚合酶连锁反应一般需要对反应混合物,在2个或3个温度之间,进行重复的热循环步骤。Polymerase chain reaction (POLYMERASE CHAIN REACTION; PCR) is a molecular biology technique used to amplify specific DNA fragments. Polymerase chain reactions generally require repeated thermal cycling steps of the reaction mixture between 2 or 3 temperatures.

逆转录聚合酶连锁反应(REVERSE TRANSCRIPTASE-POLYMERASECHAIN REACTION;RT-PCR)是将RNA链逆转录成为互补DNA(此即为逆转录反应),再以此作为模板进行聚合酶连锁反应来复制扩增DNA(此即为聚合酶连锁反应)。通过此种反应,生化检验以及检体取样的速度与精确度大幅增加。聚合酶连锁反应中的其中一种是热对流聚合酶连锁反应(convectively-driven polymerase chain reaction;cPCR),其是对反应混合物产生热对流式热循环,而使得反应混合物反应扩增。Reverse transcription polymerase chain reaction (REVERSE TRANSCRIPTASE-POLYMERASECHAIN REACTION; RT-PCR) is to reverse transcribe the RNA strand into complementary DNA (this is the reverse transcription reaction), and then use this as a template to perform polymerase chain reaction to replicate and amplify the DNA (This is the polymerase chain reaction). Through this reaction, the speed and accuracy of biochemical testing and sample sampling are greatly increased. One of the polymerase chain reactions is a convectively-driven polymerase chain reaction (cPCR), which generates heat convective heat cycles on a reaction mixture to allow reaction amplification of the reaction mixture.

然而,一般逆转录热对流聚合酶连锁反应(RT-cPCR)需要在不同、分开的装置中分别进行。这不仅会降低反应效率。而且可能会因为多次开关装置造成污染问题,产生伪阳性(false positive)结果。Generally, however, reverse transcription thermal convection polymerase chain reaction (RT-cPCR) needs to be performed separately in different, separate devices. This not only reduces the reaction efficiency. And it may cause contamination problems due to multiple switching devices, resulting in false positive (false positive) results.

实用新型内容Utility model content

本实用新型的目的在于提供一种聚合酶连锁反应(PCR)装置,可以在该PCR装置对一样品执行逆转录反应与热对流聚合酶连锁反应。The purpose of the utility model is to provide a polymerase chain reaction (PCR) device, which can perform reverse transcription reaction and thermal convection polymerase chain reaction on a sample in the PCR device.

为达上述目的,本实用新型提供一种聚合酶连锁反应装置,用于执行逆转录反应(RT)与热对流聚合酶连锁反应(cPCR),包括一上温控单元、一中间温控单元与一下温控单元。中间温控单元用以对容置在一反应容器中的一反应混合物进行温控,使得反应混合物具有进行一逆转录反应所需的一温度。中间温控单元配置在上温控单元与下温控单元之间。上温控单元与下温控单元是用以同时对容置在反应容器中的反应混合物进行温控,以使反应混合物具有进行一热对流聚合酶连锁反应所需的一温度梯度与对流情况。In order to achieve the above purpose, the utility model provides a polymerase chain reaction device for performing reverse transcription reaction (RT) and thermal convection polymerase chain reaction (cPCR), including an upper temperature control unit, a middle temperature control unit and Check the temperature control unit. The intermediate temperature control unit is used to control the temperature of a reaction mixture accommodated in a reaction container, so that the reaction mixture has a temperature required for a reverse transcription reaction. The middle temperature control unit is arranged between the upper temperature control unit and the lower temperature control unit. The upper temperature control unit and the lower temperature control unit are used to simultaneously control the temperature of the reaction mixture contained in the reaction container, so that the reaction mixture has a temperature gradient and convection conditions required for a thermal convection polymerase chain reaction.

该上温控单元、该中间温控单元与该下温控单元是以一间隙彼此隔开。该间隙是以一材质填充。填充该间隙的该材质包括电木、塑胶、铁氟龙或聚氨酯。The upper temperature control unit, the middle temperature control unit and the lower temperature control unit are separated from each other by a gap. The gap is filled with a material. The material for filling the gap includes Bakelite, plastic, Teflon or polyurethane.

该上温控单元、该中间温控单元与该下温控单元是配置在单一个腔室中。The upper temperature control unit, the middle temperature control unit and the lower temperature control unit are configured in a single chamber.

该聚合酶连锁反应装置还包括一凹槽,用以容置在该反应容器,其中该上温控单元对该凹槽的温控面积:该中间温控单元对该凹槽的温控面积:该下温控单元对该凹槽的温控面积为3~5:10~13:3~5。The polymerase chain reaction device also includes a groove for accommodating the reaction container, wherein the temperature control area of the upper temperature control unit to the groove: the temperature control area of the middle temperature control unit to the groove: The temperature control area of the lower temperature control unit for the groove is 3-5:10-13:3-5.

该中间温控单元是可移动式的温控单元。The intermediate temperature control unit is a movable temperature control unit.

该下温控单元为发热源单元,而该上温控单元为散热单元,以使在进行该热对流聚合酶连锁反应时,该反应混合物是具有由下至上升高的该温度梯度。The lower temperature control unit is a heat source unit, and the upper temperature control unit is a heat dissipation unit, so that when the thermal convective polymerase chain reaction is performed, the reaction mixture has the temperature gradient rising from bottom to top.

当中间温控单元作用时,其该上温控单元与该下温控单元是停止运作或是与该中间温控单元设定为相同温度。When the middle temperature control unit is active, whether the upper temperature control unit and the lower temperature control unit stop working or are set to the same temperature as the middle temperature control unit.

该中间温控单元停止作用后,该下温控单元接续进行加热升温作用,而上温控单元也启动散热作用,以维持一定温度梯度而稳定其热对流以进行该热对流聚合酶连锁反应。After the middle temperature control unit stops functioning, the lower temperature control unit continues to heat up, and the upper temperature control unit also starts to dissipate heat to maintain a certain temperature gradient and stabilize its thermal convection for the thermal convective polymerase chain reaction.

该聚合酶连锁反应装置进一步包含一即时侦测单元,该即时侦测单元至少包括一发光源与一光学感测器,其中该发光源与该光学感测器的配置是依据该发光源所射出的光线能在穿过反应容器中的反应混合物之后射入该光学感测器。The polymerase chain reaction device further includes a real-time detection unit, the real-time detection unit at least includes a light source and an optical sensor, wherein the configuration of the light source and the optical sensor is based on the light emitted by the light source The light can enter the optical sensor after passing through the reaction mixture in the reaction vessel.

本实用新型的优点在于:可实现在单一个装置设备中进行逆转录反应与热对流聚合酶连锁反应两者,操作方式简单;此外,能够避免在不同装置间移动反应混合物可能发生的污染问题、或试剂破坏的问题,提高检测的准确性。逆转录反应与热对流聚合酶连锁反应可以非常短的间隔时间接续反应,因此可以缩减整个反应的总花费时间,提升检测速率。聚合酶连锁反应装置设计简单,可设计成具有小的体积,甚至是可携带式的定点照护(point-of-care)装置,并且成本低。The utility model has the advantages that both the reverse transcription reaction and the thermal convection polymerase chain reaction can be carried out in a single device, and the operation method is simple; in addition, the pollution problem that may occur when moving the reaction mixture between different devices can be avoided, Or the problem of reagent damage, improve the accuracy of detection. The reverse transcription reaction and thermal convection polymerase chain reaction can be followed by a very short interval, so the total time spent on the entire reaction can be reduced and the detection rate can be increased. The design of the polymerase chain reaction device is simple, and can be designed to have a small volume, even a portable point-of-care device, and the cost is low.

为了对本实用新型的上述及其他方面有更佳的了解,下文特举较佳实施例,并配合所附附图,作详细说明如下:In order to have a better understanding of the above and other aspects of the present utility model, the preferred embodiments are specifically cited below, together with the accompanying drawings, and are described in detail as follows:

附图说明Description of drawings

图1绘示根据一实施例的聚合酶连锁反应(PCR)装置;FIG. 1 illustrates a polymerase chain reaction (PCR) device according to an embodiment;

图2绘示根据再一实施例的PCR装置;Figure 2 illustrates a PCR device according to yet another embodiment;

图3为根据又一实施例的利用本案PCR装置执行逆转录反应(RT)与热对流聚合酶连锁反应(cPCR)的胶体电泳分析结果。3 is a gel electrophoresis analysis result of reverse transcription reaction (RT) and thermal convection polymerase chain reaction (cPCR) performed by using the PCR apparatus of the present invention according to yet another embodiment.

符号说明Symbol Description

100~聚合酶连锁反应装置;100~polymerase chain reaction device;

102~上温控单元;102~upper temperature control unit;

104~中间温控单元;104~intermediate temperature control unit;

106~下温控单元;106~lower temperature control unit;

108~间隙;108~gap;

110~反应容器;110~reaction container;

112~凹槽;112 ~ groove;

114~反应混合物;114 ~ reaction mixture;

116~上表面;116~upper surface;

118~支撑板;118~support plate;

120~侧壁;120~side wall;

122~螺母;122~nut;

124~螺旋杆;124~screw rod;

126~侧壁;126 ~ side wall;

128~光学视窗;128~optical window;

130~发光源;130~light source;

132~光学感测器;132~optical sensor;

A1、A2、A3~面积。A1, A2, A3 ~ area.

具体实施方式Detailed ways

请参照图1,本案的一实施例揭示一聚合酶连锁反应(PCR)装置100,用于执行逆转录反应(reverse transcriptase reaction;RT)与热对流聚合酶连锁反应(convectively-driven polymerase chain reaction;cPCR)。PCR装置100包含一上温控单元102、一中间温控单元104与一下温控单元106。中间温控单元104介于上温控单元102与下温控单元106之间。Please refer to FIG. 1, an embodiment of the present case discloses a polymerase chain reaction (PCR) device 100 for performing reverse transcription reaction (reverse transcriptase reaction; RT) and thermal convection polymerase chain reaction (convectively-driven polymerase chain reaction; cPCR). The PCR device 100 includes an upper temperature control unit 102 , a middle temperature control unit 104 and a lower temperature control unit 106 . The middle temperature control unit 104 is located between the upper temperature control unit 102 and the lower temperature control unit 106 .

上温控单元102、中间温控单元104与下温控单元106可根据实际需求,分别独立地设计成具有加热功能及/或散热功能。在一实施例中,上温控单元102、中间温控单元104与下温控单元106可使用热传导性佳的材料,如铝、铝合金、铜、红铜等。举例来说,加热功能可以(例如利用电热能、磁热能等产生的)热传导;(例如利用空气、流体热能等产生的)热传导、热对流;或(例如利用红外线热能、碳素管热能、激光热能等产生的)热辐射方式;或上述方法的组合使上温控单元102、中间温控单元104与下温控单元106蓄热。散热功能可使用散热鳍片、风扇、致冷芯片、热管、平板热管等任意组合达成。上温控单元102、中间温控单元104与下温控单元106可具有薄膜形态、块状形态、或其他形态。举例来说,上温控单元102、中间温控单元104与下温控单元106可包括薄膜电阻加热器,或设置在金属或合金块体的帕耳帖元件(Peltier element)。上温控单元102、中间温控单元104与下温控单元106是独立地利用任意的温度感测器例如热电耦(thermal couple)等来感测温度。The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 can be independently designed to have a heating function and/or a heat dissipation function according to actual needs. In one embodiment, the upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 can use materials with good thermal conductivity, such as aluminum, aluminum alloy, copper, red copper, and the like. For example, the heating function can be heat conduction (such as generated by using electric heat energy, magnetic heat energy, etc.); heat conduction, heat convection (such as generated by using air, fluid heat energy, etc.); thermal energy, etc.) heat radiation; or a combination of the above methods to store heat in the upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 . The heat dissipation function can be achieved by using any combination of heat dissipation fins, fans, cooling chips, heat pipes, and flat heat pipes. The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 may have a film form, a block form, or other forms. For example, the upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 may include thin film resistance heaters, or Peltier elements disposed on metal or alloy blocks. The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 independently use any temperature sensor such as a thermocouple (thermal couple) to sense temperature.

上温控单元102、中间温控单元104与下温控单元106是以间隙108彼此隔开。上温控单元102、中间温控单元104与下温控单元106是彼此热绝缘,其中热绝缘的效果可通过调变间隙108的尺寸及/或填充间隙108的材质等因子达成。间隙108可以真空、气体或绝缘固体填充。气体可包括空气等。绝缘固体可任意配置在上温控单元102、中间温控单元104与下温控单元106之间相互面对的表面上,材质可包括低热传导性的例如电木、塑胶、铁氟龙(teflon)、聚氨酯(polyurethane)、或其他合适的材料,例如应用于印刷电路板的材料等。The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 are separated from each other by a gap 108 . The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 are thermally insulated from each other, wherein the effect of thermal insulation can be achieved by adjusting the size of the gap 108 and/or the material filling the gap 108 . Gap 108 may be filled with vacuum, gas or insulating solid. The gas may include air and the like. The insulating solid can be arbitrarily arranged on the surfaces facing each other between the upper temperature control unit 102, the middle temperature control unit 104 and the lower temperature control unit 106, and the material can include low thermal conductivity such as Bakelite, plastic, Teflon (teflon) ), polyurethane (polyurethane), or other suitable materials, such as those used in printed circuit boards.

在一实施例中,上温控单元102、中间温控单元104与下温控单元106是设计成具有能够容纳反应容器110例如试管等的凹槽112。凹槽112可具有任意的形状。凹槽112可具有任何高宽比,例如小于或等于10。凹槽112可设计成横向剖面具有与反应容器110相似的形状与尺寸,以使上温控单元102、中间温控单元104与下温控单元106能够贴近反应容器110,而能与反应容器110之间有效率地传递热能,减少能量损耗。反应容器110的材质可包括塑胶、石英玻璃、陶瓷与金属等。In one embodiment, the upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 are designed to have a groove 112 capable of accommodating a reaction vessel 110 such as a test tube. The groove 112 may have any shape. The groove 112 may have any aspect ratio, such as ten or less. The groove 112 can be designed to have a shape and size similar to the reaction vessel 110 in cross section, so that the upper temperature control unit 102, the middle temperature control unit 104 and the lower temperature control unit 106 can be close to the reaction vessel 110, and can be connected with the reaction vessel 110. Efficiently transfer heat energy between them to reduce energy loss. The material of the reaction vessel 110 may include plastic, quartz glass, ceramic and metal.

在实施例中,上温控单元102、中间温控单元104与下温控单元106对凹槽112的温控面积比例是适当地设计,以便对在反应容器110中的反应混合物114有效率地执行聚合酶连锁反应。举例来说,上温控单元102对凹槽112下部分的温控面积A1:中间温控单元104对凹槽112中间部分的温控面积A2:下温控单元106对凹槽112下部分的温控面积A3为3~5:10~13:3~5。当凹槽112具有固定不变的横剖面面积时,温控面积A1、A2、A3的比例也等同于高度的比例。容置在反应容器110中的反应混合物114的体积可为5μl~150μl,例如75μl。本实用新型并不限于上述尺寸,而可视实际情况设计成其他合适的尺寸。反应混合物114含有进行逆转录反应与热对流聚合酶连锁反应所需的一般试剂、化合物等。In an embodiment, the temperature control area ratio of the upper temperature control unit 102, the middle temperature control unit 104 and the lower temperature control unit 106 to the groove 112 is properly designed so that the reaction mixture 114 in the reaction vessel 110 can be efficiently Perform polymerase chain reaction. For example, the temperature control area A1 of the upper temperature control unit 102 to the lower part of the groove 112: the temperature control area A2 of the middle temperature control unit 104 to the middle part of the groove 112: the temperature control area A2 of the lower temperature control unit 106 to the lower part of the groove 112 The temperature control area A3 is 3-5:10-13:3-5. When the groove 112 has a constant cross-sectional area, the ratio of the temperature control areas A1 , A2 , A3 is also equal to the ratio of the heights. The volume of the reaction mixture 114 accommodated in the reaction vessel 110 may be 5 μl˜150 μl, for example, 75 μl. The utility model is not limited to the above-mentioned size, but can be designed into other suitable sizes depending on the actual situation. The reaction mixture 114 contains general reagents, compounds, etc. required for reverse transcription reaction and thermal convection polymerase chain reaction.

请参照图1,在欲进行逆转录反应时,中间温控单元104可移动至贴近反应容器110及凹槽112,以对容置在反应容器110中的反应混合物114进行温控,使反应容器110中的反应混合物114能具有逆转录反应所需的一温度,且该温度可以达到均一(isothermal),而得以进行逆转录反应。在一实施例中,逆转录反应可仅通过设定中间温控单元104达成,因此中间温控单元104是视为逆转录反应单元,而上温控单元102与下温控单元106是停止运作,换句话说,上温控单元102及下温控单元106不会执行加热及散热功能。举例来说,用作发热源的中间温控单元104其温度是固定设定在逆转录反应所需的40℃~60℃其中之一,例如45℃。Please refer to FIG. 1, when the reverse transcription reaction is to be performed, the intermediate temperature control unit 104 can be moved close to the reaction vessel 110 and the groove 112, so as to control the temperature of the reaction mixture 114 contained in the reaction vessel 110, so that the reaction vessel The reaction mixture 114 in 110 can have a temperature required for the reverse transcription reaction, and the temperature can be isothermal to carry out the reverse transcription reaction. In one embodiment, the reverse transcription reaction can be achieved only by setting the middle temperature control unit 104, so the middle temperature control unit 104 is regarded as the reverse transcription reaction unit, and the upper temperature control unit 102 and the lower temperature control unit 106 are stopped. In other words, the upper temperature control unit 102 and the lower temperature control unit 106 will not perform the functions of heating and cooling. For example, the temperature of the intermediate temperature control unit 104 used as a heat source is fixedly set at one of 40° C.˜60° C. required for the reverse transcription reaction, for example, 45° C.

请参照图1,中间温控单元104在逆转录反应完毕之后,开始执行热对流聚合酶连锁反应之际或之前,可以用作调控散热(或致冷)单元,也可以移动远离自反应容器110/凹槽112。Please refer to Fig. 1, after the reverse transcription reaction is completed, the intermediate temperature control unit 104 can be used as a heat dissipation (or cooling) unit for regulating and controlling heat dissipation (or cooling) before or when starting to perform the thermal convection polymerase chain reaction, and can also be moved away from the self-reaction container 110 / groove 112.

请参照图1,在一实施例中,上温控单元102与下温控单元106是用以同时对容置在反应容器110中的反应混合物114进行温控,以使反应混合物114具有进行热对流聚合酶连锁反应所需的一温度梯度与对流情况。在一实施例中,下温控单元106是设定在高温(例如95℃~98℃,例如95℃)且用作发热源单元,上温控单元102是设定在相对于下温控单元106的低温(例如45℃至75℃,例如60℃、65℃)且用作散热(或致冷)单元,使得反应混合物114能具有由下至上升高的温度梯度,而得以进行热对流聚合酶连锁反应。举例来说,当上温控单元102与下温控单元106是分别设定在固定的温度值时,反应混合物114能得到恒定的温度梯度与对流情况。在一实施例中,上温控单元102是用以监控对应于上温控单元102的反应混合物114的上表面116的温度,因此可视为界面温度控制单元。Please refer to FIG. 1 , in one embodiment, the upper temperature control unit 102 and the lower temperature control unit 106 are used to control the temperature of the reaction mixture 114 contained in the reaction vessel 110 at the same time, so that the reaction mixture 114 has heat A temperature gradient and convective conditions required for convective polymerase chain reaction. In one embodiment, the lower temperature control unit 106 is set at a high temperature (for example, 95°C to 98°C, such as 95°C) and used as a heat source unit, and the upper temperature control unit 102 is set at a temperature relative to the lower temperature control unit. The low temperature of 106 (such as 45°C to 75°C, such as 60°C, 65°C) is used as a heat dissipation (or cooling) unit, so that the reaction mixture 114 can have a temperature gradient that increases from bottom to top, thereby enabling thermal convection polymerization Enzyme chain reaction. For example, when the upper temperature control unit 102 and the lower temperature control unit 106 are respectively set at fixed temperature values, the reaction mixture 114 can obtain a constant temperature gradient and convection. In one embodiment, the upper temperature control unit 102 is used to monitor the temperature of the upper surface 116 of the reaction mixture 114 corresponding to the upper temperature control unit 102 , so it can be regarded as an interface temperature control unit.

在另一实施例中,举例来说,上温控单元102、下温控单元106与中间温控单元104是也可同时设定在逆转录反应所需的温度,以执行逆转录反应;在逆转录反应进行完毕后,上温控单元102与下温控单元106是直接(亦即没有进行降温)从逆转录反应的温度改变设定成热对流聚合酶连锁反应的温度,以进行热对流聚合酶连锁反应,因此整体反应的时间短、效率高。In another embodiment, for example, the upper temperature control unit 102, the lower temperature control unit 106 and the middle temperature control unit 104 can also be set at the temperature required by the reverse transcription reaction at the same time to perform the reverse transcription reaction; After the reverse transcription reaction is completed, the upper temperature control unit 102 and the lower temperature control unit 106 are set directly (that is, without cooling down) from the temperature of the reverse transcription reaction to the temperature of the thermal convection polymerase chain reaction to perform thermal convection. Polymerase chain reaction, so the overall reaction time is short and the efficiency is high.

本发明PCR装置100实现在单一个装置设备中进行逆转录反应与热对流聚合酶连锁反应两者。操作方式简单。此外,能够避免在不同装置间移动反应混合物114可能发生的污染问题、或试剂破坏的问题,提高检测的准确性。逆转录反应与热对流聚合酶连锁反应可以非常短的间隔时间接续反应,因此可以缩减整个反应的总花费时间,提升检测速率。聚合酶连锁反应装置100设计简单,可设计成具有小的体积,甚至是可携带式的定点照护(point-of-care)装置,并且成本低。The PCR device 100 of the present invention realizes both reverse transcription reaction and thermal convection polymerase chain reaction in a single device device. The operation method is simple. In addition, it is possible to avoid contamination problems or reagent damage problems that may occur when moving the reaction mixture 114 between different devices, and improve detection accuracy. The reverse transcription reaction and thermal convection polymerase chain reaction can be followed by a very short interval, so the total time spent on the entire reaction can be reduced and the detection rate can be increased. The polymerase chain reaction device 100 is simple in design, can be designed to have a small volume, and even be a portable point-of-care device with low cost.

请参照图2,其绘示根据一实施例的PCR装置100。其中是旋转支撑板118的侧壁120侧的螺母122,来改变螺旋杆124在支撑板118的侧壁126侧的长度,由此控制固定在螺旋杆124一端上的上温控单元102、中间温控单元104的位置。在此实施例中,即可通过此机构设计来使中间温控单元进行移动。Please refer to FIG. 2 , which illustrates a PCR device 100 according to an embodiment. Among them, the nut 122 on the side wall 120 side of the rotating support plate 118 is used to change the length of the screw rod 124 on the side wall 126 side of the support plate 118, thereby controlling the upper temperature control unit 102 fixed on one end of the screw rod 124, the middle The location of the temperature control unit 104 . In this embodiment, the intermediate temperature control unit can be moved through this mechanism design.

本案的PCR装置100也可以进一步整合real-time PCR所用的即时侦测单元及元件,以使本PCR装置100具有RT-PCR、cPCR、real-time PCR三合一的设计。The PCR device 100 of this case can also further integrate real-time detection units and components used in real-time PCR, so that the PCR device 100 has a three-in-one design of RT-PCR, cPCR, and real-time PCR.

请参照图2,以举例说明本案的PCR装置100也可以进一步整合real-timePCR所用的即时侦测单元及元件的一作法,但整合方式不作此例限制。下温控单元106可设计成具有透明的光学视窗128,例如穿孔或透镜等,来达成即时侦测(real-time monitoring)。举例来说,光学视窗128使得下方的发光源130例如发光二极管所射出的光线,能穿过反应容器110中含有荧光染剂(例如Sybr Green)的反应混合物114,并射入光学感测器132包括例如CCD、CMOS相机/影像感测器,通过侦测到的光强度等信号来即时判断聚合酶连锁反应的程度。可以采用移动方式,依序撷取影像;也可采用固定方式,定点撷取影像。发光源130与下温控单元106之间可设置一滤光片。光学感测器132与上温控单元102之间可设置一滤光片。Please refer to FIG. 2 to illustrate a method that the PCR device 100 of this case can also further integrate real-time detection units and components used in real-timePCR, but the integration method is not limited to this example. The lower temperature control unit 106 can be designed to have a transparent optical window 128 such as a perforation or a lens to achieve real-time monitoring. For example, the optical window 128 enables the light emitted by the light source 130 below, such as a light emitting diode, to pass through the reaction mixture 114 containing a fluorescent dye (such as Sybr Green) in the reaction vessel 110 and enter the optical sensor 132. Including, for example, CCD, CMOS camera/image sensor, the degree of the polymerase chain reaction can be judged in real time through the detected signals such as light intensity. Images can be captured sequentially in a moving manner; images can also be captured at a fixed point in a fixed manner. A filter may be disposed between the light source 130 and the lower temperature control unit 106 . A filter can be disposed between the optical sensor 132 and the upper temperature control unit 102 .

在其他实施例中,侦测装置可依其他适当方式设计。举例来说,发光源(未显示)是设置在上温控单元102的上方侧,光学感测器(未显示)是设置在下温控单元106的下方侧。在其他设计中,上温控单元102与中间温控单元104也可设计成具有透明的光学视窗(未显示)。In other embodiments, the detection device can be designed in other appropriate ways. For example, the light source (not shown) is disposed on the upper side of the upper temperature control unit 102 , and the optical sensor (not shown) is disposed on the lower side of the lower temperature control unit 106 . In other designs, the upper temperature control unit 102 and the middle temperature control unit 104 may also be designed with transparent optical windows (not shown).

聚合酶连锁反应装置100可根据实际需求(例如执行其他模式的反应),适当地调变操作方法与设计。举例来说,可设计成多反应容器110例如多试管的阵列式架构,以提高检测的整体速率。上温控单元102、中间温控单元104与下温控单元106可分别独立地设计成可移动式的温控单元。可利用滑块、电磁铁、及/或其他合适的机械设计例如弹簧来移动上温控单元102、中间温控单元104与下温控单元106。聚合酶连锁反应装置100并不限于应用至对流式聚合酶连锁反应,也可应用于恒温环型扩增(isothermal amplification)反应,或其他形态的反应。The operation method and design of the polymerase chain reaction apparatus 100 can be appropriately adjusted according to actual needs (for example, performing other modes of reactions). For example, an array structure of multiple reaction vessels 110 such as multiple test tubes can be designed to increase the overall detection rate. The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 can be independently designed as movable temperature control units. The upper temperature control unit 102 , the middle temperature control unit 104 and the lower temperature control unit 106 can be moved by sliders, electromagnets, and/or other suitable mechanical designs such as springs. The polymerase chain reaction device 100 is not limited to be applied to convective flow polymerase chain reaction, and can also be applied to isothermal amplification reaction or other forms of reaction.

请参照图3,以本案PCR装置,对人类β-actin mRNA进行逆转录反应(RT)与热对流聚合酶连锁反应(cPCR),其所得的胶体电泳图,可验证本装置诉求(可于单一系统/装置执行RT及cPCR反应)。Please refer to Figure 3, using the PCR device of this case to perform reverse transcription reaction (RT) and thermal convection polymerase chain reaction (cPCR) on human β-actin mRNA, the obtained gel electrophoresis pattern can verify the appeal of this device (can be used in a single system/apparatus to perform RT and cPCR reactions).

在一实施例中,其中PCR装置100包含一上温控单元102、一中间温控单元104与一下温控单元106,可以实施成多管(例如阵列式)的架构。In one embodiment, the PCR device 100 includes an upper temperature control unit 102 , a middle temperature control unit 104 and a lower temperature control unit 106 , which can be implemented in a multi-tube (eg, array) structure.

Claims (9)

1. a polymerase chain reaction device, in order to carry out reverse transcription reaction and thermal convection polymerase chain reaction, is characterized in that, this polymerase chain reaction device comprises:
Middle temperature conditioning unit, in order to the reaction mixture being contained in a reaction vessel is carried out to temperature control, has this reaction mixture and carries out the required temperature of a reverse transcription reaction;
Upper temperature conditioning unit; And
Lower temperature conditioning unit, wherein this centre temperature conditioning unit is configured on this between temperature conditioning unit and this lower temperature conditioning unit, on this, temperature conditioning unit and this lower temperature conditioning unit are in order to this reaction mixture being contained in this reaction vessel is carried out to temperature control simultaneously, so that this reaction mixture has the required thermograde of a thermal convection polymerase chain reaction and the convection current situation of carrying out.
2. polymerase chain reaction device as claimed in claim 1, is characterized in that, on this, temperature conditioning unit, this centre temperature conditioning unit and this lower temperature conditioning unit are spaced with a gap.
3. polymerase chain reaction device as claimed in claim 2, is characterized in that, this gap is to fill with a material.
4. polymerase chain reaction device as claimed in claim 3, is characterized in that, this material of filling this gap comprises vacuum, gas, bakelite, plastic cement, Teflon or urethane.
5. polymerase chain reaction device as claimed in claim 1, is characterized in that, on this, temperature conditioning unit, this centre temperature conditioning unit and this lower temperature conditioning unit are to be configured in single chamber.
6. polymerase chain reaction device as claimed in claim 1, it is characterized in that, this polymerase chain reaction device also comprises a groove, in order to be contained in this reaction vessel, the temperature control area of temperature conditioning unit to this groove on this wherein: the temperature control area of this centre temperature conditioning unit to this groove: this lower temperature conditioning unit is 3~5:10~13:3~5 to the temperature control area of this groove.
7. polymerase chain reaction device as claimed in claim 1, is characterized in that, this centre temperature conditioning unit is portable temperature conditioning unit.
8. polymerase chain reaction device as claimed in claim 1, it is characterized in that, this lower temperature conditioning unit is pyrotoxin unit, and on this, temperature conditioning unit is heat-sink unit, so that when carrying out this thermal convection polymerase chain reaction, this reaction mixture is to have this thermograde raising from the bottom to top.
9. polymerase chain reaction device as claimed in claim 1, it is characterized in that, this polymerase chain reaction device further comprises an instant detecting unit, this instant detecting unit at least comprises a luminous source and an optical sensor, and wherein the configuration of this luminous source and this optical sensor is can after the reaction mixture through in reaction vessel, inject this optical sensor according to the emitted light of this luminous source.
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